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dc.contributor.authorBabenko, A. A.en
dc.contributor.authorZhuchkov, V. I.en
dc.contributor.authorUpolovnikova, A. G.en
dc.contributor.authorKel, I. N.en
dc.date.accessioned2020-09-29T09:47:26Z-
dc.date.available2020-09-29T09:47:26Z-
dc.date.issued2017-
dc.identifier.citationStudy of the viscosity of slags of ??? - SiO2 - ?2?3 - 25 % Al2O3 - 8 % MgO System / A. A. Babenko, V. I. Zhuchkov, A. G. Upolovnikova, I. N. Kel. — DOI 10.17073/0368-0797-2017-10-820-825 // Izvestiya Ferrous Metallurgy. — 2017. — Vol. 10. — Iss. 60. — P. 820-825.en
dc.identifier.issn0368-0797-
dc.identifier.otherhttps://fermet.misis.ru/jour/article/download/1159/1007pdf
dc.identifier.other1good_DOI
dc.identifier.other54b58417-1eb3-41e4-996b-7937148213f1pure_uuid
dc.identifier.otherhttp://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85044143885m
dc.identifier.urihttp://elar.urfu.ru/handle/10995/90458-
dc.description.abstractThe effect of the B2O3 content and the slag basicity on the viscosity of the CaO–SiO2–B2O3 system containing 25 % Al2O3 and 8 % MgO2 was studied using a simplex-lattice method of experiment planning that allows obtaining mathematical models describing the dependence of the property on the composition as a continuous function. Synthetic slags, corresponding to the composition of simplex under study, were smelted in graphite crucibles from pre-calcined oxides. The composition of slags, corresponding to the remaining points of the local simplex plan, was obtained by counter-packing the slags of simplexes. The viscosity of the slag was measured in molybdenum crucibles by means of an electrovib-rational viscometer in an argon flow with continuous cooling of the melt from a homogeneous-liquid to a solid state. Mathematical models were constructed that describe the relationship between the temperature of a given viscosity and the composition of the oxide system using experimental data. Then, a set of viscosity isolines was obtained by combining the obtained composition-temperature diagrams of the given viscosity with the isothermal section of the composition-viscosity diagram. The generalization of mathematical modeling results and graphical imaging on the isothermal profile of the composition-viscosity diagram made it possible to obtain new data on the viscosity of the CaO–SiO2–B2O3 oxide system containing 25 % Al2O3 and 8 % MgO in the basic 2–5 range and 1–10 % B2O3 content. The slags of the oxide system under study in the temperature range of 1400–1500 °C are characterized by low viscosity. At a temperature of 1400 °C, the viscosity of slag with basicity 2.0–2.5, containing 7–10 % B2O3 does not exceed 3–4 Ps. The displacement of the slag into the basicity of 3–5 is accompanied by a decrease in B2O3 content to 2–6 % by increasing the slag viscosity to 12 Ps. An increase in temperature to 1450 °C leads to a significant decrease in the viscosity of slags with basicity of 2–3, even for slag with B2O3 content of 4 %, it does not exceed 4 Ps and increases to 6 Ps in the basicity of 3–5 and B2O3 content of 1–3 %. The slag viscosity in the basicity of 3–5 at B2O3 content of 1–4 % does not exceed 4 Ps at a temperature of 1500 °C. © 2017, National University of Science and Technology MISIS. All rights reserved.en
dc.format.mimetypeapplication/pdfen
dc.language.isoruen
dc.publisherNational University of Science and Technology MISISen
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.rightscc-byother
dc.sourceIzvestiya Ferrous Metallurgyen
dc.subjectBASICITYen
dc.subjectBORON CONTAINING SLAGSen
dc.subjectCOMPOSITION-VISCOSITY DIAGRAMSen
dc.subjectEXPERIMENTAL PLANNINGen
dc.subjectVISCOSITYen
dc.titleStudy of the viscosity of slags of ??? - SiO2 - ?2?3 - 25 % Al2O3 - 8 % MgO Systemen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.rsi30394315-
dc.identifier.doi10.17073/0368-0797-2017-10-820-825-
dc.identifier.scopus85044143885-
local.affiliationInstitute of Metallurgy UB RAS, Ekaterinburg, Russian Federationen
local.affiliationUral Federal University named after the first President of Russia B.N. Yeltsin, Ekaterinburg, Russian Federationen
local.contributor.employeeBabenko, A.A., Institute of Metallurgy UB RAS, Ekaterinburg, Russian Federation, Ural Federal University named after the first President of Russia B.N. Yeltsin, Ekaterinburg, Russian Federationru
local.contributor.employeeZhuchkov, V.I., Institute of Metallurgy UB RAS, Ekaterinburg, Russian Federation, Ural Federal University named after the first President of Russia B.N. Yeltsin, Ekaterinburg, Russian Federationru
local.contributor.employeeUpolovnikova, A.G., Institute of Metallurgy UB RAS, Ekaterinburg, Russian Federationru
local.contributor.employeeKel, I.N., Institute of Metallurgy UB RAS, Ekaterinburg, Russian Federationru
local.description.firstpage820-
local.description.lastpage825-
local.issue60-
local.volume10-
local.identifier.pure7025981-
local.identifier.eid2-s2.0-85044143885-
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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